976 resultados para Superconducting tape
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Original wav file in this record was 0 bytes; re-extracted a new wav file from the CD in Special Collections Nov 2016 and replaced the original wav file in this record.
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The study of AC losses in superconducting pancake coils is of utmost importance for the development of superconducting devices. Due to different technical difficulties this study is usually performed considering one of two approaches: considering superconducting coils of few turns and studying AC losses in a large frequency range vs. superconducting coils with a large number of turns but measuring AC losses only in low frequencies. In this work, a study of AC losses in 128 turn superconducting coils is performed, considering frequencies ranging from 50 Hz till 1152 Hz and currents ranging from zero till the critical current of the coils. Moreover, the study of AC losses considering two different simultaneous harmonic components is also performed and results are compared to the behaviour presented by the coils when operating in a single frequency regime. Different electrical methods are used to verify the total amount of AC losses in the coil and a simple calorimetric method is presented, in order to measure AC losses in a multi-harmonic context. Different analytical and numerical methods are implemented and/or used, to design the superconducting coils and to compute the total amount of AC losses in the superconducting system and a comparison is performed to verify the advantages and drawbacks of each method.
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Référence bibliographique : Rol, 60204
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Référence bibliographique : Rol, 60203
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A method is presented for determining the composition of thin films containing the elements Bi, Sr, Br, Cu, and Ca. Quantitative x-ray fluorescence (XRF) consisting of radioactive sources (secondary foil excitor 241Am-Mo source and 55Pe source), a Si(Li) detector, and a multichannel analyzer were employed. The XRF system was calibrated by using sol gel thin films of known element composition and also by sputtered thin films analyzed by the conventional Rutherford Back Scattering (RBS). The XRF system has been used to assist and optimize the sputter target composition required to produce high-Tc BiSrCaCuO films with the desired metal composition.
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We prepared samples of MgB2 and ran sets of experiments aimed for investigation of superconducting properties under pressure. We found the value of pressure derivative of the transition temperature -1.2 ± 0.05 K/GPa. Then, using McMillan formula, we found that the main contribution to the change of the transition temperature under the pressure is due to the change in phonon frequencies. Griineisen parameter was calculated to be 7g = 2.4. Our results suggest that MgB2 is a conventional superconductor.
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Thèse numérisée par la Division de la gestion de documents et des archives de l'Université de Montréal
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Depuis l’adoption de la Loi 90 en 2002, la Loi sur les infirmières et infirmiers (LII, article 36) confère une autonomie élargie aux infirmières en reconnaissant, notamment, leur compétence et leur responsabilité à l’égard de l’évaluation clinique qui est représentée dans cette loi comme l’assise de l’exercice infirmier (Pellerin, 2009; OIIQ, 2010). La collecte des données constitue une étape fondamentale du processus d’évaluation clinique (Dillon, 2007; Doyon, Brûlé & Cloutier, 2002; Pellerin, 2009; Weber & Kelley, 2007). L’infirmière d’urgence a une responsabilité majeure à l’égard de la collecte des données. En effet, elle œuvre auprès de clientèles de tous âges qui présentent des problèmes de santé variés, aigus et parfois urgents et doit souvent intervenir, sur la base de son évaluation clinique, avant qu’un diagnostic n’ait été établi ou que le patient n’ait été vu par le médecin (Newberry & Criddle, 2005). Or, malgré toute l’importance que revêtent dorénavant l’évaluation clinique et la collecte des données au sens de la loi, ce rôle de l’infirmière semble tarder à s’actualiser dans la pratique clinique. Le but de cette étude qualitative descriptive consiste à explorer les perceptions d’infirmières, de gestionnaires en soins infirmiers et d’infirmières ressources cliniques d’urgence relativement à la réalisation de la collecte des données. La norme clinique « collecte des données » (assessment) de l’Emergency Nurses Association (1999) constitue le cadre de référence de l’étude. Cinq entrevues individuelles semi-dirigées de 60 minutes ainsi qu’un groupe de discussion de 90 minutes ont été réalisés auprès d’infirmières d’urgence. Un deuxième groupe de discussion a également réuni deux gestionnaires en soins infirmiers et deux infirmières ressources cliniques de l’urgence. Les données recueillies ont été analysées selon l’approche proposée par Miles et Huberman (2003). Les résultats obtenus démontrent que les infirmières considèrent la collecte des données comme un aspect fondamental de leur pratique à l’urgence, qui contribue à améliorer la qualité et la sécurité des soins dispensés. Or, les résultats révèlent également que leur compréhension de la collecte des données est variable, que leur pratique est aléatoire et largement influencée par le modèle biomédical. Plusieurs facteurs influencent la pratique des infirmières relativement à la collecte des données notamment : la conception individuelle de la collecte des données et du rôle infirmier, les relations et l’interaction avec les membres de l’équipe des soins infirmiers et les autres professionnels ainsi que le soutien de l’organisation et des gestionnaires en soins infirmiers. Ce dernier facteur semble prépondérant dans le contexte de l’urgence et démontre que le soutien des gestionnaires et des infirmières ressources cliniques influence de façon importante la pratique dans les milieux cliniques. Cette étude propose des pistes de réflexion sur la formation académique, la formation continue, l’administration des soins infirmiers et la collaboration interprofessionnelle qui pourraient faciliter l’actualisation du rôle des infirmières à l’égard de la collecte des données et de l’évaluation clinique afin d’améliorer la qualité des soins dispensés à l’urgence.
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Plusieurs logiciels utilisés dans la réalisation des pièces graphiques incluses dans ce mémoire : ArcGIS 10; Autocad 2012; GIS Consortium de la Ville de Chicago; PowerPoint 2010, Photoshop... etc. Notre recherche est la première et la seule qui aborde le phénomène de l'introversion résidentielle au Québec. Elle se focalise sur le postulat de la représentation du phénomène de l’introversion résidentielle autant qu’une forme urbaine fermée ou semi-fermée d’une descendance accouplée aux GCs étatsuniennes. De la gated community américaine vers l’enclave francilienne, à l’introversion résidentielle montréalaise. À l'aide de notre analyse typo-morphologique, basée principalement sur la théorie de Rossi (1966), nous avons dévoilé sur un nouveau fait urbain qui existe dans la communauté métropolitaine de Montréal. Nous l'avions désigné par : enclaves résidentielles introverties (ERI).
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The magnetic-field dependence of the magnetization of cylinders, disks, and spheres of pure type-I superconducting lead was investigated by means of isothermal measurements of first magnetization curves and hysteresis cycles. Depending on the geometry of the sample and the direction and intensity of the applied magnetic field, the intermediate state exhibits different irreversible features that become particularly highlighted in minor hysteresis cycles. The irreversibility is noticeably observed in cylinders and disks only when the magnetic field is parallel to the axis of revolution and is very subtle in spheres. When the magnetic field decreases from the normal state, the irreversibility appears at a temperature-dependent value whose distance to the thermodynamic critical field depends on the sample geometry. The irreversible features in the disks are altered when they are submitted to an annealing process. These results agree well with very recent high-resolution magneto-optical experiments in similar materials that were interpreted in terms of transitions between different topological structures for the flux configuration in the intermediate state. A discussion of the relative role of geometrical barriers for flux entry and exit and pinning effects as responsible for the magnetic irreversibility is given.
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Optimum conditions for the preparation of tape recording quality Y-Fe20 s by the thermal decomposition of ferrous oxalate dihydrate have been established. Formation of the intermediate F%O~ which is most important in forming Y-FezO 3 takes place only in the presence of water vapour. Various stages of decomposition have been characterised by DTA, TG, DTG, and x-ray powder diffraction. The method for the preparation of acicular "Y-Fe208 that matches very well with the commercial tape recording material has been developed
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Acicular FeC~O4-2H20 was precipitated from glycerol and starch media. Thermal decomposition of this oxalate in dry and moist nitrogen yielded primarily FeO and Fe 3Oa respectively. Characterization was attempted through DTA, TG, x-ray diffraction, TEM and magnetization studies. It was found that the oxalate can be completely decomposed to FeaO~ in moist nitrogen (PH~o ,"-" 35 torr) at 775 K and then oxidised by dry air to acicular "/-Fe~Oa at 575 K. The resulting material has saturation magnetization (,-,., 70 emu/g), coercive field (N300 Oe) and squareness ratio ( ,~, 0-60-0-65), which values art comparable with those of the commercial samples
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Magnetism and magnetic materials have been playing a lead role in improving the quality of life. They are increasingly being used in a wide variety of applications ranging from compasses to modern technological devices. Metallic glasses occupy an important position among magnetic materials. They assume importance both from a scientific and an application point of view since they represent an amorphous form of condensed matter with significant deviation from thermodynamic equilibrium. Metallic glasses having good soft magnetic properties are widely used in tape recorder heads, cores of high-power transformers and metallic shields. Superconducting metallic glasses are being used to produce high magnetic fields and magnetic levitation effect. Upon heat treatment, they undergo structural relaxation leading to subtle rearrangements of constituent atoms. This leads to densification of amorphous phase and subsequent nanocrystallisation. The short-range structural relaxation phenomenon gives rise to significant variations in physical, mechanical and magnetic properties. Magnetic amorphous alloys of Co-Fe exhibit excellent soft magnetic properties which make them promising candidates for applications as transformer cores, sensors, and actuators. With the advent of microminiaturization and nanotechnology, thin film forms of these alloys are sought after for soft under layers for perpendicular recording media. The thin film forms of these alloys can also be used for fabrication of magnetic micro electro mechanical systems (magnetic MEMS). In bulk, they are drawn in the form of ribbons, often by melt spinning. The main constituents of these alloys are Co, Fe, Ni, Si, Mo and B. Mo acts as the grain growth inhibitor and Si and B facilitate the amorphous nature in the alloy structure. The ferromagnetic phases such as Co-Fe and Fe-Ni in the alloy composition determine the soft magnetic properties. The grain correlation length, a measure of the grain size, often determines the soft magnetic properties of these alloys. Amorphous alloys could be restructured in to their nanocrystalline counterparts by different techniques. The structure of nanocrystalline material consists of nanosized ferromagnetic crystallites embedded in an amorphous matrix. When the amorphous phase is ferromagnetic, they facilitate exchange coupling between nanocrystallites. This exchange coupling results in the vanishing of magnetocrystalline anisotropy which improves the soft magnetic properties. From a fundamental perspective, exchange correlation length and grain size are the deciding factors that determine the magnetic properties of these nanocrystalline materials. In thin films, surfaces and interfaces predominantly decides the bulk property and hence tailoring the surface roughness and morphology of the film could result in modified magnetic properties. Surface modifications can be achieved by thermal annealing at various temperatures. Ion irradiation is an alternative tool to modify the surface/structural properties. The surface evolution of a thin film under swift heavy ion (SHI) irradiation is an outcome of different competing mechanism. It could be sputtering induced by SHI followed by surface roughening process and the material transport induced smoothening process. The impingement of ions with different fluence on the alloy is bound to produce systematic microstructural changes and this could effectively be used for tailoring magnetic parameters namely coercivity, saturation magnetization, magnetic permeability and remanence of these materials. Swift heavy ion irradiation is a novel and an ingenious tool for surface modification which eventually will lead to changes in the bulk as well as surface magnetic property. SHI has been widely used as a method for the creation of latent tracks in thin films. The bombardment of SHI modifies the surfaces or interfaces or creates defects, which induces strain in the film. These changes will have profound influence on the magnetic anisotropy and the magnetisation of the specimen. Thus inducing structural and morphological changes by thermal annealing and swift heavy ion irradiation, which in turn induce changes in the magnetic properties of these alloys, is one of the motivation of this study. Multiferroic and magneto-electrics is a class of functional materials with wide application potential and are of great interest to material scientists and engineers. Magnetoelectric materials combine both magnetic as well as ferroelectric properties in a single specimen. The dielectric properties of such materials can be controlled by the application of an external magnetic field and the magnetic properties by an electric field. Composites with magnetic and piezo/ferroelectric individual phases are found to have strong magnetoelectric (ME) response at room temperature and hence are preferred to single phasic multiferroic materials. Currently research in this class of materials is towards optimization of the ME coupling by tailoring the piezoelectric and magnetostrictive properties of the two individual components of ME composites. The magnetoelectric coupling constant (MECC) (_ ME) is the parameter that decides the extent of interdependence of magnetic and electric response of the composite structure. Extensive investigates have been carried out in bulk composites possessing on giant ME coupling. These materials are fabricated by either gluing the individual components to each other or mixing the magnetic material to a piezoelectric matrix. The most extensively investigated material combinations are Lead Zirconate Titanate (PZT) or Lead Magnesium Niobate-Lead Titanate (PMNPT) as the piezoelectric, and Terfenol-D as the magnetostrictive phase and the coupling is measured in different configurations like transverse, longitudinal and inplane longitudinal. Fabrication of a lead free multiferroic composite with a strong ME response is the need of the hour from a device application point of view. The multilayer structure is expected to be far superior to bulk composites in terms of ME coupling since the piezoelectric (PE) layer can easily be poled electrically to enhance the piezoelectricity and hence the ME effect. The giant magnetostriction reported in the Co-Fe thin films makes it an ideal candidate for the ferromagnetic component and BaTiO3 which is a well known ferroelectric material with improved piezoelectric properties as the ferroelectric component. The multilayer structure of BaTiO3- CoFe- BaTiO3 is an ideal system to understand the underlying fundamental physics behind the ME coupling mechanism. Giant magnetoelectric coupling coefficient is anticipated for these multilayer structures of BaTiO3-CoFe-BaTiO3. This makes it an ideal candidate for cantilever applications in magnetic MEMS/NEMS devices. SrTiO3 is an incipient ferroelectric material which is paraelectric up to 0K in its pure unstressed form. Recently few studies showed that ferroelectricity can be induced by application of stress or by chemical / isotopic substitution. The search for room temperature magnetoelectric coupling in SrTiO3-CoFe-SrTiO3 multilayer structures is of fundamental interest. Yet another motivation of the present work is to fabricate multilayer structures consisting of CoFe/ BaTiO3 and CoFe/ SrTiO3 for possible giant ME coupling coefficient (MECC) values. These are lead free and hence promising candidates for MEMS applications. The elucidation of mechanism for the giant MECC also will be the part of the objective of this investigation.